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Towards faster, smoother, and more compact fuzzy approximation, with an application to non-destructive evaluation of space shuttle's structural integrity

机译:朝着更快,更光滑,更紧凑的模糊近似,应用于不破坏性评估航天飞机的结构完整性

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摘要

It is known that fuzzy systems are universal approximators, i.e., any input-output system can be approximated, within any given accuracy, by a system described by fuzzy rules. Fuzzy rules work well in many practical applications. However, in some applications, the existing fuzzy rule approximation techniques are not sufficient:First, in many practical problems (e.g., in many control applications), derivatives of the approximated function are very important, and so, we want not only the approximating function to be close to the approximated one, but we also want their derivatives to be close; however, standard fuzzy approximation techniques do not guarantee the accuracy of approximating a derivative.Second, to get the desired approximation accuracy, we sometimes need unrealistically many rules.In this talk, we show how both problems can be solved.
机译:众所周知,模糊系统是通用逼近器,即,任何输入-输出系统都可以在任何给定的精度范围内通过由模糊规则描述的系统来近似。模糊规则在许多实际应用中效果很好。但是,在某些应用中,现有的模糊规则逼近技术还不够:首先,在许多实际问题(例如,在许多控制应用中)中,逼近函数的导数非常重要,因此,我们不仅要求近似函数接近近似值,但我们也希望它们的导数接近;但是,标准的模糊逼近技术并不能保证逼近导数的准确性。其次,要获得所需的逼近精度,有时我们需要不切实际的许多规则。在本演讲中,我们展示了如何解决这两个问题。

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    R. Osegueda; V. Kreinovich;

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